Developing and applying new epitaxial methods of InAs QD growth in the InP-based material system with a focus on telecom C-band wavelengths; Characterization of epitaxial material using XRD, PL, SEM, and AFM; Developing and applying new approaches to enable tuneability of QD-based devices in terms of wavelength and the energy fine structure splitting; Developing and implementing nanofabrication techniques for scalable fabrication and on-chip integration of highly efficient sources of single photons and entangled photon pairs
Requirements:
As a formal qualification, you must hold a PhD degree (or equivalent). We are looking for a postdoc with a strong background in condensed matter physics who has excelled in their studies and is interested in working at the forefront of a new research field. Experience in epitaxy/nanofabrication/quantum optics is an advantage. Strong problem-solving skills and the ability to work independently and as part of a team
Text:
Postdoc in the Development of On-Chip Integrated QD-based Quantum Light Sources Operating in the Telecom C-band Developing and applying new epitaxial methods of InAs QD growth in the InP-based material system with a focus on telecom C-band wavelengths; Characterization of epitaxial material using XRD, PL, SEM, and AFM; Developing and applying new approaches to enable tuneability of QD-based devices in terms of wavelength and the energy fine structure splitting; Developing and implementing nanofabrication techniques for scalable fabrication and on-chip integration of highly efficient sources of single photons and entangled photon pairs As a formal qualification, you must hold a PhD degree (or equivalent). We are looking for a postdoc with a strong background in condensed matter physics who has excelled in their studies and is interested in working at the forefront of a new research field. Experience in epitaxy/nanofabrication/quantum optics is an advantage. Strong problem-solving skills and the ability to work independently and as part of a team
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